College of Science & Engineering
Sophia Love
- Doctor of Philosophy (Natural and Physical Sciences)
- sophie.love@jcu.edu.au
Elle Robertson
- Doctor of Philosophy (Agriculture, Environmental and Related Studies)
- elle.robertson@jcu.edu.au
Romain Vaucher
- Senior Lecturer, Sedimentology
- romain.vaucher@jcu.edu.au
Jenny Fisher
- Associate Dean, Learning and Teaching
- jenny.fisher@jcu.edu.au
Ambili Narayanan
- Doctor of Philosophy (Natural and Physical Sciences)
- ambili.narayanan@my.jcu.edu.au
Sarfaraz Ali
- Postdoctoral Research Fellow
- sarfaraz.ali@jcu.edu.au
Mikaeylah Davidson
- Postdoctoral Research Fellow
- mikaeylah.davidson@jcu.edu.au
Liuxin Chen
- Lecturer
- liuxin.chen@jcu.edu.au
Rafael Cabral Carvalho
- Lecturer, Marine Geoscience
- rafael.cabralcarvalho@jcu.edu.au
Tom Lloyd
- Postdoctoral Research Fellow, Global Ecosystems
- tom.lloyd@jcu.edu.au
NQBP & JCU Research & Monitoring Partnership - Seagrass and Coral Studies (Old ID 24715)
This project conducts long term assessments of seagrass and coral in the Ports of Mackay, Hay Point, Weipa and Abbott Point. The work forms part of a research and monitoring partnership between JCU and NQBP to monitor and assess marine environmental health within ports as well as support related research and education opportunities.
Caught in the canopy: can coral larvae navigate seaweed canopies? (Old ID 27922)
Hard corals and fleshy macroalgae are two major benthic components of corals reefs, and the competition between these two groups can shape reef trajectories. Where coral reefs have been degraded through anthropogenic influences (climate change and local factors), the competitive interactions between coral and macroalgae are often increased in frequency and intensity. Given the range of known negative effects of macroalgae on corals, and in light of the climate crisis, it has been proposed that manual removal of macroalgae could help boost coral settlement and resilience on a local scale. Indeed, recent research has shown that the physical removal of macroalgae can triple the resulting recruitment of coral juveniles and drastically increase coral cover, and hence is a viable strategy for active reef management. However, it is not yet known what macroalgal mechanism (biochemical or physical) prevents coral juvenile success. It is also not known what level of algal reduction is needed to achieve reef rehabilitation outcomes. In this project, field data and aquarium-based experiments using different densities and heights of macroalgae will determine how macroalgae canopies affect coral recruitment, and will explicitly test the hypothesis that a physical barrier is responsible for preventing coral juveniles access to reef substrate, and could explain wide- scale patterns in recruitment failure on reefs worldwide.
INVESTIGATION OF SLURRY PROPERTIES TO ENHANCE GOLD LEACHING (Old ID 30053)
This project with the Pajingo Mine involves thesis students solving industry related problems. The main objective is to optimise the production of gold covering 5 main aspects: - Investigate chemical additives to enhance the gold leaching - Determine the relationship between leaching rate and slurry density - Investigate chemical additives that could be used to reduce the slurry viscosity - Determine the relationship between particle size and viscosity for slurry with a P80 of 38microns down to a P80 of 10microns - Investigate ultimate settled density of tailings in a Tailings Storage Facility for tailings initially deposited at 40% solids and 60% solids
Techno-Economic Analysis of Bio-Based Hydrogen Production in Gasifier-Solid Oxide Fuel Cell Systems: Exploring Dry Reforming Materials for Enhanced Performance and Cost Efficiency (Old ID 31187)
This fellowship, sponsored by the Australian Government (AUD 90,000), will support my research project "Techno-Economic Analysis of Bio-Based Hydrogen Production in Gasifier-Solid Oxide Fuel Cell Systems: Exploring Dry Reforming Materials for Enhanced Performance and Cost Efficiency." This initiative is hosted by Imperial College London, The University of Oxford, and the Henry Royce Institute in the UK. I intend to leverage this platform to foster collaborations with top-tier research groups, particularly in the realm of low-cost green hydrogen production. This aligns with James Cook University's aspirations to become a leading institute in delivering relevant research to industries operating in the Tropics.
Mitigation of Losses in Community from Extreme Wind Events (Old ID 23175)
The objective of the project is to investigate and inform on aspects of building codes/standards and implementation to mitigate losses from extreme wind events including Cyclones.
Impacts of Air Pollution on Productivity of Natural and Cultivated Tropical C4 Grasses: Implications in the Face of Land Use Change in Brazil (Old ID 27102)
The overall aim of this project is to assess the impact of currently observed, and more common future episodes of high ozone (O3) concentrations in the context of changing land-cover (from native C4 pasture to sugarcane) at the regional scale in southern Brazil. This information is of direct interest to governmental, non- governmental, private-sector, academic and community stakeholders with respect to the diverse benefits tropical grasses provide to society.
Mungalla ecosystem service restoration. (Old ID 27736)
Coastal wetland restoration is critical and necessary in response to lost values and services, and to increase climate change resilience. Working with Birdlife Australia, Greening Australia and Mungalla Aboriginal Corporation for Business, we will undertake a series of works to improve restoration outcomes for the wetland on the station. The focus is on blue carbon, though other services include water quality and biodiversity outcomes.
National inventory of implemented nature-based solutions (Old ID 27760)
This project will undertake a national inventory revie of implemented nature-based solutions that have been completed to mitigate coastal hazards. The aim of this project is to collate the information, build a repository of data and to provide end user groups access to the data and information to inform future planning decisions.
Coral bleaching assessment 2024 in northern Great Barrier Reef
Climate induced coral bleaching is now the foremost threat to coral reefs, including Australia's Great Barrier Reef (GBR). Based on current and projected sea surface temperatures there is a very high likelihood that mass bleaching will occur in March 2024 on the GBR. As such, The Great Barrier Reef Marine Park Authority (GBRMPA) are requesting that our team undertake in-water bleaching assessments in the northern GBR in March 2024, at reefs where we are working on crown-of-thorns starfish.
Developing Genetic Resources for Red Snapper, an Important Marine Food Fish for Singapore
Developing Genetic Resources for Red Snapper, an Important Marine Food Fish for Singapore
Start Date:
20 Nov 2025
Start Date:
01 Jan 2024
End Date:
01 Jan 2024
Start Date:
01 Jan 2024
End Date:
01 Jan 2024
Start Date:
01 Jan 2023
End Date:
01 Jan 2023
End Date:
01 Jan 2007
Start Date:
01 Jan 2019
End Date:
01 Jan 2002
Title:
ACM (lifetime)
Start Date:
01 Jan 2004
Start Date:
01 Jan 2014
End Date:
01 Jan 2019
End Date:
01 Jan 1999
